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水对用传统(45S5)和定制生物活性玻璃功能化的实验性树脂复合材料的影响

Water-Induced Changes in Experimental Resin Composites Functionalized with Conventional (45S5) and Customized Bioactive Glass.

作者信息

Muradbegovic Alen, Par Matej, Panduric Vlatko, Zugec Paula, Tauböck Tobias T, Attin Thomas, Tarle Zrinka, Marovic Danijela

机构信息

Muradbegović Dental Clinic, Malkočeva 3, 75000 Tuzla, Bosnia and Herzegovina.

Department of Endodontics and Restorative Dentistry, School of Dental Medicine, University of Zagreb, Gunduliceva 5, 10000 Zagreb, Croatia.

出版信息

J Funct Biomater. 2023 May 27;14(6):298. doi: 10.3390/jfb14060298.

Abstract

The aim of the study was to evaluate microhardness, mass changes during 1-year water immersion, water sorption/solubility, and calcium phosphate precipitation of experimental composites functionalized with 5-40 wt% of two types of bioactive glass (BG): 45S5 or a customized low-sodium fluoride-containing formulation. Vickers microhardness was evaluated after simulated aging (water storage and thermocycling), water sorption and solubility were tested according to ISO 4049, and calcium phosphate precipitation was studied by scanning electron microscopy, energy dispersive X-ray spectroscopy, and Fourier-transform infrared spectroscopy. For the composites containing BG 45S5, a significant reduction in microhardness was observed with increasing BG amount. In contrast, 5 wt% of the customized BG resulted in statistically similar microhardness to the control material, while higher BG amounts (20 and 40 wt%) resulted in a significant improvement in microhardness. Water sorption was more pronounced for composites containing BG 45S5, increasing 7-fold compared to the control material, while the corresponding increase for the customized BG was only 2-fold. Solubility increased with higher amounts of BG, with an abrupt increase at 20 and 40 wt% of BG 45S5. Calcium phosphate was precipitated by all composites with BG amounts of 10 wt% or more. The improved properties of the composites functionalized with the customized BG indicate better mechanical, chemical, and dimensional stability without compromising the potential for calcium phosphate precipitation.

摘要

本研究的目的是评估用5-40 wt%的两种生物活性玻璃(BG):45S5或定制的含低氟化钠配方功能化的实验性复合材料的显微硬度、1年水浸期间的质量变化、水吸附/溶解度以及磷酸钙沉淀情况。在模拟老化(水储存和热循环)后评估维氏显微硬度,根据ISO 4049测试水吸附和溶解度,并通过扫描电子显微镜、能量色散X射线光谱和傅里叶变换红外光谱研究磷酸钙沉淀。对于含有BG 45S5的复合材料,随着BG含量增加,显微硬度显著降低。相比之下,5 wt%的定制BG导致显微硬度在统计学上与对照材料相似,而更高的BG含量(20和40 wt%)导致显微硬度显著提高。含有BG 45S5的复合材料的水吸附更明显,与对照材料相比增加了7倍,而定制BG的相应增加仅为2倍。溶解度随着BG含量的增加而增加,在BG 45S5含量为20和40 wt%时急剧增加。所有BG含量为10 wt%或更高的复合材料都沉淀出了磷酸钙。用定制BG功能化的复合材料的性能改善表明其具有更好的机械、化学和尺寸稳定性,同时不影响磷酸钙沉淀的潜力。

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